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Direct binding of Cdt2 to PCNA is important for targeting the CRL4(Cdt2) E3 ligase activity to Cdt1

The CRL4(Cdt2) ubiquitin ligase complex is an essential regulator of cell-cycle progression and genome stability, ubiquitinating substrates such as p21, Set8, and Cdt1, via a display of substrate degrons on proliferating cell nuclear antigens (PCNAs). Here, we examine the hierarchy of the ligase and...

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Detalles Bibliográficos
Autores principales: Hayashi, Akiyo, Giakoumakis, Nickolaos Nikiforos, Heidebrecht, Tatjana, Ishii, Takashi, Panagopoulos, Andreas, Caillat, Christophe, Takahara, Michiyo, Hibbert, Richard G, Suenaga, Naohiro, Stadnik-Spiewak, Magda, Takahashi, Tatsuro, Shiomi, Yasushi, Taraviras, Stavros, von Castelmur, Eleonore, Lygerou, Zoi, Perrakis, Anastassis, Nishitani, Hideo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Life Science Alliance LLC 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6312923/
https://www.ncbi.nlm.nih.gov/pubmed/30623174
http://dx.doi.org/10.26508/lsa.201800238
Descripción
Sumario:The CRL4(Cdt2) ubiquitin ligase complex is an essential regulator of cell-cycle progression and genome stability, ubiquitinating substrates such as p21, Set8, and Cdt1, via a display of substrate degrons on proliferating cell nuclear antigens (PCNAs). Here, we examine the hierarchy of the ligase and substrate recruitment kinetics onto PCNA at sites of DNA replication. We demonstrate that the C-terminal end of Cdt2 bears a PCNA interaction protein motif (PIP box, Cdt2(PIP)), which is necessary and sufficient for the binding of Cdt2 to PCNA. Cdt2(PIP) binds PCNA directly with high affinity, two orders of magnitude tighter than the PIP box of Cdt1. X-ray crystallographic structures of PCNA bound to Cdt2(PIP) and Cdt1(PIP) show that the peptides occupy all three binding sites of the trimeric PCNA ring. Mutating Cdt2(PIP) weakens the interaction with PCNA, rendering CRL4(Cdt2) less effective in Cdt1 ubiquitination and leading to defects in Cdt1 degradation. The molecular mechanism we present suggests a new paradigm for bringing substrates to the CRL4-type ligase, where the substrate receptor and substrates bind to a common multivalent docking platform to enable subsequent ubiquitination.